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Titlebook: Biomechanics; Mechanical Propertie Y. C. Fung Book 19811st edition Springer-Verlag New York 1981 bioengineering.biomechanics.blood.blood ce

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Heart Muscle,Both myocardial and skeletal muscle cells are striated. Their ultrastructures are similar. Each cell is made up of sarcomeres (from Z line to Z line), containing interdigitating thick myosin threads and thin actin threads. The basic mechanism of contraction must be similar in both; but important differences exist.
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The Flow Properties of Blood,on dioxide between the lungs and the cells of the tissues. We can leave the study of most of these important functions of blood to hematologists, biochemists, and pathological chemists. For biomechanics the most important information we need is the, constitutive equation.
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Bone and Cartilage, the usual engineering structural analysis. Figure 12.1:1 shows the stress-strain relationship of a human femur subjected to uniaxial tension. It is seen that dry bone is brittle and fails at a strain of 0.4%; but wet bone is less so, and fails at a strain of 1.2%.
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https://doi.org/10.1007/978-3-322-81161-5on dioxide between the lungs and the cells of the tissues. We can leave the study of most of these important functions of blood to hematologists, biochemists, and pathological chemists. For biomechanics the most important information we need is the, constitutive equation.
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https://doi.org/10.1007/978-3-642-47020-2 the usual engineering structural analysis. Figure 12.1:1 shows the stress-strain relationship of a human femur subjected to uniaxial tension. It is seen that dry bone is brittle and fails at a strain of 0.4%; but wet bone is less so, and fails at a strain of 1.2%.
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Zusammenfassung und Implikationen,nd strength of materials. Through the years its meaning has been extended to cover the study of the motions of all kinds of particles and continua, including quanta, atoms, molecules, gases, liquids, solids, structures, stars, and galaxies. In a generalized sense it is applied to the analysis of any
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https://doi.org/10.1007/978-3-322-81161-5on dioxide between the lungs and the cells of the tissues. We can leave the study of most of these important functions of blood to hematologists, biochemists, and pathological chemists. For biomechanics the most important information we need is the, constitutive equation.
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https://doi.org/10.1007/978-3-322-87999-8 gas exchange units of animals. They deliver oxygen to the tissues of all organs, exchange with CO., and return to the lung to unload CO. and soak up O. again. This is, of course, what circulation is all about. The heart is the pump, the blood vessels are the conduits, and the capillary blood vessel
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